Zhao Xuedong, Qi Fei, Li Hao, Shi Zhengxiang
Department of Agricultural Structure and Bioenvironmental Engineering, College of Water Resources and Civil Engineering, China Agricultural University, Beijing 100083, China.
Key Laboratory of Agricultural Engineering in Structure and Environment, Ministry of Agriculture and Rural Affairs, Beijing 100083, China.
Heliyon. 2022 Dec 23;8(12):e12418. doi: 10.1016/j.heliyon.2022.e12418. eCollection 2022 Dec.
The pathogenic microorganisms in the air have a significant impact on piglet growth and even biosecurity of pig industry. Carbon felt-based microbial adsorption shows great potential in reducing the misuse of chemical disinfectants in pig houses. However, poor biocompatibility and low adsorption efficiency hinder the application of carbon felt for microbial control in animal husbandry. Herein, modified carbon felt was prepared with strong acid to improve its surface properties and internal structure. The hydrophilic and large specific surface area of modified sample offered high adsorption activity for bacteria adhered on biotic/abiotic interface. Fourier transform infrared spectrometer, X-ray diffraction, pore specific surface area analysis, and scanning electron microscopy were used to analyze the chemical functional groups and microporous structure of the modified carbon felt. Antibacterial tests were performed using the model bacteria . Acid treatment converts the hydrophobicity of carbon felt to hydrophilicity, increasing adsorption capacity and promoting a disinfection rate of up to 97.3%. This study can enhance bioaffinity and adsorption selectivity of carbon felt to , bringing its antibacterial activity and application prospects closer to industrialization.
空气中的病原微生物对仔猪生长乃至养猪业的生物安全有重大影响。基于碳毡的微生物吸附在减少猪舍化学消毒剂的滥用方面显示出巨大潜力。然而,生物相容性差和吸附效率低阻碍了碳毡在畜牧业微生物控制中的应用。在此,用强酸制备改性碳毡以改善其表面性质和内部结构。改性样品的亲水性和大比表面积为附着在生物/非生物界面上的细菌提供了高吸附活性。使用傅里叶变换红外光谱仪、X射线衍射仪、孔隙比表面积分析仪和扫描电子显微镜分析改性碳毡的化学官能团和微孔结构。使用模型细菌进行抗菌测试。酸处理将碳毡的疏水性转变为亲水性,提高了吸附能力,促进消毒率高达97.3%。本研究可增强碳毡对[具体对象未明确,原文此处表述有误]的生物亲和力和吸附选择性,使其抗菌活性和应用前景更接近产业化。